HR: 12:05h
AN: U22B-08 [Abstracts]
TI: The 1 Ma Lake Bosumtwi (West Africa) Paleoclimate Record: Comparisons to Marine and Polar Records
AU: * PECK, J A
EM: jpeck@UAKRON.EDU
AF: Dept. of Geology and Environmental Science, Univ. of Akron, Akron, OH 44325-4101, United
States
AU: Shanahan, T M
EM: tshanahan@whoi.edu
AF: Woods Hole Oceanographic Institution, Woods Hole, Woods Hole, MA 02543, United
States
AU: King, J W
EM: jking@gso.uri.edu
AF: Grad. School of Oceanography, Univ. of RI, Narragansett, RI 02882, United States
AU: Overpeck, J T
EM: jto@u.arizona.edu
AF: Dept. of Geological Sciences, Univ. of Arizona, Tucson, AZ 85721, United States
AU: Scholz, C A
EM: cascholz@mailbox.syr.edu
AF: Dept. of Earth and Environmental Sciences, Syracuse Univ., Syracuse, NY 13244, United
States
AU: Heil, C
EM: chip@coral.gso.uri.edu
AF: Grad. School of Oceanography, Univ. of RI, Narragansett, RI 02882, United States
AU: Forman, S L
EM: slf@uic.edu
AF: Dept. Earth and Environmental Science, Univ. of Ill at Chicago, Chicago, IL 80607, United
States
AU: Amoako, P Y
AF: Ghana Geological Survey Department, Ministry Branch Post Office, Accra, M80, Ghana
AB:
Lake Bosumtwi is a hydrologically closed lake occupying a 1.07 Ma impact crater in Ghana, West Africa. The lake
lies beneath the path of the seasonal migration of the ITCZ and therefore can provide a sedimentary record of
monsoon variability in West Africa. Scientific drilling recovered a 291-m long sediment section that spans the full
1 Ma history of the lake. This long continental record is ideal for comparison to long marine and ice-core records
at both glacial-interglacial and abrupt-change timescales.
Oxygen-isotope stratigraphy, derived from calcareous fossils, often provides age control and a way to place
individual marine sediment cores into a global stratigraphic framework. Lacking a direct tie-in to the marine
oxygen-isotope stratigraphy, individual lacustrine basins can present challenges for global correlation. Through
radiocarbon, optically stimulated luminescence and paleomagnetic dating, limited age control has been
established for the 1 Ma Lake Bosumtwi sediment sequence. Within a Bosumtwi sediment sequence that is
mostly laminated occur intervals of non-laminated sediment having increased density, decreased organic content
and a high-coercivity magnetic mineral assemblage. Some of these massive layers contain slump-folding and
intraformational clasts. These lithologies are interpreted to represent lake-level lowstands when a diminished
West African summer monsoon resulted in decreased moisture balance and lake-level regression. Some
Bosumtwi lake-level lowstands match intervals of increased sea surface salinity in the Gulf of Guinea resulting
from reduced river discharge (Weldeab et al. 2007, Science, 316, 1303-1307). However, during other intervals
(MIS2) there are differences between the two records. Corresponding to glacial stages and stadials, increased
amounts of high-coercivity magnetic minerals are present in the Lake Bosumtwi sediment. Elevated aerosol dust
export from arid Sahel sources, possibly accompanied by enhanced magnetic-mineral diagenesis during lake-
level lowstands, is interpreted to have produced this magnetic signature. The Bosumtwi dust proxy record
displays variability similar to that of published dust records from marine and polar settings. Comparing this
continental dust record to a marine dust record off the coast of West Africa provides additional constraints on
identifying glacial-interglacial variability in the 1 Ma long lacustrine sediment sequence.
DE: 1512 Environmental magnetism
DE: 4910 Astronomical forcing
DE: 4914 Continental climate records
DE: 9305 Africa
SC: Union [U]
MN: 2007 Fall Meeting